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Microelementary Composition of Soils and Steppe Phytocoenoses in the Western Transbaikal Region

机译:西部Transbaikal地区的土壤和草原植物植物的微精巧组成

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The average concentrations of 17 microelements and their variation ranges have been determined in chestnut soils (Kastanozems) and the vegetation of steppe arid ecosystems in the western Transbaikal region. The average concentrations of Li, B, Al, Cr, Fe, Co, Zn, and Zr in the soils are consistent with their clarke values, which are accepted as environmental-geochemical standards. The concentrations of Mo, Ba, and Be are 1.8-2.9 times higher than their clarke values, and the concentrations of Cu, Ni, and Mn are lower than their clarke values, while the concentrations of V and Pb reach their maximum permissible levels. Mo, Zn, B, and Cu demonstrate the highest degree of biological absorption from the soil by plants; Li and Mn are absorbed to medium degree; and Be, Al, Ti, V, Cr, Fe, Co, Ni, Zr, Ba, and Pb are absorbed to a low degree. For V, Cr, Mn, Fe, Zn, Ba, and Pb, a correlation between their concentrations in the vegetation and soil has been established (r = 0.51-0.82), while there is no correlation (r = -0.08-0.39) for Li, Be, B, Al, Ti, Co, Ni, Cu, Zr, and Mo. A deficit of B, Zn, and Cu and higher concentrations of Fe, Mo, Ba, and Sr in the vegetation have been identified. The unfavorable ratios between essential elements have been determined. The contribution of the above-ground phytomass to the biogenic migration of microelements has been assessed.
机译:在栗子土壤(Kastanozems)中确定了17个微量元素的平均浓度及其变化范围,以及西部Transbaikal地区的草原干旱生态系统的植被。土壤中Li,B,Al,Cr,Fe,Co,Zn和Zr的平均浓度与其Clarke值一致,其被认为是环化学标准。 Mo,Ba的浓度高于其克拉值的1.8-2.9倍,Cu,Ni和Mn的浓度低于克拉值,而V和Pb的浓度达到其最大允许水平。 Mo,Zn,B和Cu展示了植物土壤中的最高程度的生物学吸收; Li和Mn被吸收到中等程度;并且,Al,Ti,V,Cr,Fe,Co,Ni,Zr,Ba和Pb被吸收到低度。对于V,Cr,Mn,Fe,Zn,Ba和Pb,已经建立了它们在植被和土壤中的浓度之间的相关性(R = 0.51-0.82),而没有相关性(r = -0.08-0.39)对于Li,B是,B,Al,Ti,Co,Ni,Cu,Zr和Mo。已经鉴定了植被中的B,Zn和Cu的缺点,植被中的高浓度的Fe,Mo,Ba和Sr。已确定必要元素之间的不利比率。已经评估了地上植物对微量元素的生成迁移的贡献。

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